ITU-T SERIES L SUPP 7-2014 ITU-T L 1300 C Supplement on rationale for minimum data set for evaluating energy efficiency and for controlling data centre equipment in view of power s.pdf
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1、 I n t e r n a t i o n a l T e l e c o m m u n i c a t i o n U n i o n ITU-T Series L TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU Supplement 7 (12/2014) SERIES L: CONSTRUCTION, INSTALLATION AND PROTECTION OF CABLES AND OTHER ELEMENTS OF OUTSIDE PLANT ITU-T L.1300 Supplement on rationale for mini
2、mum data set for evaluating energy efficiency and for controlling data centre equipment in view of power saving ITU-T L-series Recommendations Supplement 7 L series Supplement 7 (12/2014) i Supplement 7 to ITU-T L-series Recommendations ITU-T L.1300 Supplement on rationale for minimum data set for e
3、valuating energy efficiency and for controlling data centre equipment in view of power saving Summary Supplement 7 to ITU-T L-series Recommendations describes the rationale for a minimum data set for evaluating energy efficiency and for controlling data centre equipment with a view to power saving b
4、ased on Recommendation ITU-T L.1300. More precisely, this Supplement reports the data set necessary for: evaluation of energy efficiency and coordinated control to save power in data centres. Finally, it provides a summary of the minimum data set and gap analysis with other standards. History Editio
5、n Recommendation Approval Study Group Unique ID* 1.0 ITU-T L Suppl. 7 2014-12-19 5 11.1002/1000/12435 Keywords Best practice, data centre, energy efficient, information and communication technology and climate change (ICT the data set necessary for evaluation of energy efficiency in data centres; th
6、e data set necessary for coordinated control to save power in data centres; and a summary of the minimum data set and gap analysis with other standards. 2 Definitions This Supplement uses the following terms: 2.1 dynamic data: Data that should be obtained from data centre equipment periodically. 2.2
7、 static data: Data that should be treated statically. 3 Abbreviations and acronyms This Supplement uses the following abbreviations and acronyms: COP Coefficient Of Performance CRAC Computer Room Air Conditioner CRAH Computer Room Air Handler DCiE Data Centre infrastructure Efficiency DPPE Data cent
8、re Performance Per Energy ECMA European Computer Manufactures Association GEC Green Energy Coefficient HVAC Heating, Ventilation and Air Conditioning ICT Information and Communication Technology ITEE IT equipment Energy Efficiency ITEU IT Equipment Utilization KVM Keyboard, Video monitor, and Mouse
9、MIB Management Information Base PDU Power Distribution Unit PUE Power Usage Effectiveness RDU Rack Distribution Unit UPS Uninterruptible Power Supply 2 L series Supplement 7 (12/2014) VAV Variable Air Volume 4 Introduction Energy consumption in data centres is increasing year by year with the growth
10、 in their numbers. In order to mitigate global warming, reduction of power consumption in data centres is urgent. Generally, information and communication technology (ICT) equipment (e.g., servers, routers, switches, storage units) and facility equipment (e.g., power delivery components, heating, ve
11、ntilation and air conditioning (HVAC) system components) account for a large percentage of energy consumption in data centres. Thus, power-saving measures for these components are necessary to reduce overall power consumption. Evaluation of energy efficiency in data centres is necessary to know how
12、green the data centre is and to investigate the effect of power-saving measures. To evaluate whether the data centre is power efficient, it is necessary to continuously trace metrics that represent the energy efficiency of the data centre. An example of such a metric is power usage effectiveness (PU
13、E) or its reciprocal, data centre infrastructure efficiency (DCiE), both of which express the energy efficiency of facility equipment. In addition to power-saving measures for each component, energy consumption in data centres can be further reduced by implementing “coordinated control“ of ICT equip
14、ment and facility equipment. In general, ICT equipment and facility equipment are separately controlled. If facility equipment is controlled in a coordinated way according to the arrangement of the workload of ICT equipment, further power reduction can be achieved. To evaluate energy efficiency in d
15、ata centres and to control their equipment to achieve power saving, it is necessary to collect data from the data centre equipment. Currently, sensors can be installed to collect the data necessary, but the installation cost can be very high. It is also possible to obtain monitoring information dire
16、ctly from data centre equipment by using, for example, a management information base (MIB) for ICT equipment. However, it is difficult to collect the data necessary in an integrated fashion because a data centre is generally a multivendor environment, and each vendor defines its own measurement poin
17、t and allocation address. Consequently, this Supplement describes the minimum data set necessary for evaluating energy efficiency and for controlling data centre equipment to save power in data centres. The data set includes two types of data: 1. data that should be obtained from data centre equipme
18、nt periodically (dynamic data); 2. data that should be treated statically (static data). The definition of such a minimum data set is intended to facilitate the evaluation and control of equipment under a multivendor environment. The means of collecting the data from data centre equipment is outside
19、 the scope of this Supplement and should be addressed as a future task. This Supplement considers: Dynamic data: Data that should be obtained from data centre equipment periodically. Static data: Data that should be treated statically. 5 Data set necessary for evaluation of energy efficiency in data
20、 centres This clause describes the minimum data set necessary for evaluating energy efficiency in data centres. The data set necessary is described, based on the analysis of the following metrics for evaluating energy efficiency of data centres. Table 1 lists examples of metrics, which represent the
21、 energy efficiency of a data centre. Table 2 shows the relation between the metrics and the parameters. L series Supplement 7 (12/2014) 3 Table 1 Examples of metrics representing energy efficiency of data centres Metrics Definitional identity Notes PUE: power usage effectiveness Total energy consump
22、tion of data centre/energy consumption of ICT equipment. PUE is proposed by the Green Grid b-TGG WP14, and determines the energy efficiency of a data centre infrastructure. The reciprocal of PUE is DCiE: data centre infrastructure efficiency. ITEU: IT equipment utilization Energy consumption of ICT
23、equipment/total rated power of ICT equipment. IT equipment utilization (ITEU) is proposed by the Green IT Promotion Council b-GITPC-DPPE, and represents the degree of energy saving by virtual and operational techniques using the potential ICT equipment capacity reducing waste capacity. A reduction i
24、n equipment to be installed is promoted by using only the number of devices needed to meet the required ICT capacity reducing waste capacity. ITEE: IT equipment energy efficiency (Total server capacity + Total storage capacity + Total NW equipment capacity)/total rated power of ICT equipment. IT equ
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